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Home › Absolute Encoder › ASS40K-13 SSI Absolute Encoder Engineering Solution

ASS40K-13 SSI Absolute Encoder Engineering Solution

EncoderWorks Team
2 monthsago

For systems built around the ASS40K-13, a custom compatible encoder solution can be engineered for maintenance support, retrofit implementation, replacement planning, and upgrade work. If the installed machine uses a higher-resolution singleturn SSI encoder with terminal-box connection, the compatible version can be developed around the original control and installation concept, with a typical production lead time of 30 working days.

Technical Overview of the ASS40K-13 Encoder

The ASS40K-13 is a singleturn absolute encoder intended for rotary motion measurement in industrial shaft and drive applications. In the AMS 40 / ASS 40 coding structure, AS identifies the singleturn family, S defines the SSI interface, and K specifies a terminal box connection. The latest manual confirms that this encoder platform operates with 12–30 V DC supply and uses SSI communication with binary or gray code data format, RS422 / 5 V clock and data levels, and a supported clock range of 80 kHz to 1 MHz.

This version is distinguished by its higher singleturn resolution class. The manual states that the singleturn side of the series supports up to 13 bit, equal to 8192 steps per revolution, so the ASS40K-13 represents the upper singleturn resolution level within this platform. The same series also includes V/R for direction selection, Z input for setting the current position to zero with a minimum pulse duration, and a status output that is HIGH in normal operation and LOW in the event of an error.

ASS40K-13 SSI Absolute Encoder Engineering Solution-EncoderWorks
ASS40K-13 SSI Absolute Encoder Engineering Solution-EncoderWorks

Industrial Integration Considerations

For this model, controller-side compatibility becomes especially important because the 13-bit singleturn structure may be used where the installed system expects a finer SSI position value than lower-resolution versions. During retrofit work, the receiving controller should be checked for SSI timing, data length, code format, and handling of direction, preset, and status-related signals. Maintaining the same nominal interface is not enough unless the data structure also remains consistent with the existing evaluation logic.

Installation conditions should be reviewed with equal care. The manual lists 11j6 × 30 mm as the standard shaft dimension and 14j6 × 30 mm as an option, with mechanical load limits for radial and axial forces. It also specifies protection levels up to IP66 / IP67 depending on sealing arrangement and notes that permissible speed changes with the seal type. This matters in projects where the encoder is installed in harsher environments or where wet-area conditions require a particular sealing choice.

Custom Compatible Encoder Solution

For the ASS40K-13, a custom compatible encoder solution can be configured to match the original SSI communication, terminal-box connection method, shaft-side installation, and singleturn resolution requirements as closely as possible. The compatible design can be aligned with the required 13-bit data structure, code format, control-signal usage, sealing arrangement, and mounting logic so that changes to the surrounding machine remain limited during replacement or upgrade work.

This is particularly valuable where the installed machine already uses the upper singleturn resolution available in the platform and where the owner wants to preserve the existing control-side processing. In those cases, the practical objective is continuity in absolute-position behavior, field wiring, preset logic, and environmental suitability rather than a generic interface match alone.

Lead Time and Custom Development

Typical production lead time: 30 working days.

Before production, the engineering review should confirm the required 13-bit singleturn structure, SSI data format, clock and data levels, terminal-box arrangement, shaft dimensions, sealing requirements, installation space, and controller-side decoding expectations. The actual use of V/R, Z, and status signals should also be checked before manufacturing so the compatible solution can remain aligned with the installed machine logic.

Typical Technical Parameters

ParameterSpecification
Encoder TypeSingleturn absolute encoder
Resolution Class13 bit
Max Steps per Revolution8192
InterfaceSSI
Code TypeBinary / Gray code
Supply Voltage12–30 V DC
Clock InputRS422 / 5 V
Clock Frequency80 kHz to 1 MHz
Data InterfaceRS422 / 5 V
Control SignalsV/R, Z input
Status OutputHTL
Connection TypeTerminal box
Shaft Dimension11j6 × 30 mm standard, 14j6 × 30 mm optional
Protection RatingIP66 to IP66/IP67 depending on sealing arrangement
Operating Temperature-25 °C to +85 °C
Application OrientationMaintenance, retrofit, replacement, upgrade
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